1. Zhiwu Liang, clinic Paitoon Tontiwachwuthikul, help Raphael.Idem, Simulation of effects of critical parameters on reboiler heat duty for post-combustion aqueous MEA-based CO2 capture process, submitted to Ind. Eng. Chem. Res. 2009
  2. “Kinetics of sulfur dioxide- and oxygen-induced degradation of aqueous monoethanolamine solution during CO2 absorption from power plant flue gas streams”, in International Journal of Greenhouse Gas Control, (2008) (with T. Suppap, R. Idem and C. Saiwan)
  3. Q. Zhou, C. Chan, and P. Tontiwachwuthikul, A Monitoring and diagnostic Expert System for Carbon Dioxide Capture, Expert System with Applications, vol. 36, 2009.
  4. “Physical and Transport Properties of Synthetic Aqueous Amino Alcohol Solutions for CO2 Absorption from Flue Gas Streams”, IChemE’s journal, Process Safety and Environmental Protection, 86 (2008); p291-295 (with Kreanhkrai Maneeintr, R. Idem, et. al.);
  5. Q. Zhou, C. Chan, and P. Tontiwachwuthikul, A Statistical Analysis of the Carbon Dioxide Capture Process, in International Journal of Greenhouse Gas Control,Vol.3 (2009) p535-544.
  6. “ Reaction Kinetics of CO2 in Aqueous 1-Amino-2-Propanol, 3-Amino-1-Propanol and Dimethylmonoethanolamine Solutions in the temperature range of (298 – 313) K Using the Stopped-Flow Technique, Ind.& Eng. Chem. Research; (2008), 47, p.2213-2220 (with Li. J., Henni, A.)
  7. “A Regression Analysis Study on the Carbon Dioxide Capture Process”, Journal Industrial & Engineering Chemistry Research, 2008, 47, p.4937-4943 (with Zhou, Qing, C. Chan);
  8. “Wettability Determination of the Crude Oil?Reservoir Brine?Reservoir Rock System with Dissolution of CO2 at High Pressures and Elevated Temperatures,”  Energy & Fuels; 2008; 22(4); 2362-2371. (with Yang D. and Gu Y.)
  9. “Carbon Dioxide Absorption into MEA-Methanol Hybrid Solvent”, submitted to Journal Industrial & Engineering Chemistry Research, December 2007 (with Phairat Usubharatana);
  10. “Wettability Determination of the Reservoir Brine?Reservoir Rock System with Dissolution of CO2 at High Pressures and Elevated Temperatures” in Energy & Fuels; 2008; 22(1); 504-509. (with Yang D. and Gu Y.)
  11. “Mass Transfer Prediction and Model of Carbon Dioxide Absorption into MEA-Methanol Hybrid Solvent”, submitted to Chem. Eng. Chem.  Sci., December 2007 (with Phairat Usubharatana);
  12. “Effect of internal coagulant on effectiveness of polyvinylidene fluoride membrane for carbon dioxide separation and absorption”, Journal of Membrane Science, accepted 6 December 2007 (A. Xu, A. Yang, S. Young, D. deMontigny);
  13. Henni A., Li, J.; Tontiwachwuthikul, P.; Henni, A., “Reaction Kinetics of CO2 in Aqueous 1-Amino-2-Propanol, 3-Amino-1-Propanol and Dimethylmonoethanolamine Solutions in the Temperature Range of 298-313 K, Using the Stopped-Flow Technique, Ind. Eng. Chem Res,47(2213-2220) 2008;
  14. Chan, C., R. Idem, P. Tontiwachwuthikul, “Guest Editors’ Introduction”, Special Issue of Engineering Applications of Artificial Intelligence on “Applications of artificial intelligence on process systems engineering”, in Vol.20, Issue 2, March 2007, p.111-114, (Elsevier Science)
  15. “Artificial Intelligence for Monitoring and Supervisory Control of Process Systems”, Engineering Application of Artificial Intelligence, “special issue on Application of Artificial Intelligence in Process Systems Engineering” Vol. 20, No. 2, 2007, p.115-131 . (with Chan, C.W., Uraikul, V.);
  16. Li, J.; Mundhwa, M.; Tontiwachwuthikul, P.; Henni, A., “ Volumetric Properties, Viscosities, and Refractive Indices for Aqueous 2-(Methylamino)ethanol Solutions from (298.15 to 343.15) K J. Chem. Eng. Data; 52(2); 560-565, 2007
  17. Li. J., Henni, A., P. Tontiwachwuthikul, “Reaction Kinetics of CO2 in Aqueous Ethyldiamine, Ethylethanolamine and Diethylmonoethanolamine Solutions in the Temperature Range of (298 – 313) K Using the Stopped-Flow Technique”. Accepted by Ind. Eng. Chem. Res., in Press
  18. Li. J., Henni, A., P. Tontiwachwuthikul, “ Reaction Kinetics of CO2 in Aqueous 1-Amino-2-Propanol, 3-Amino-1-Propanol and Dimethylmonoethanolamine Solutions in the temperature range of (298 – 313) K Using the Stopped-Flow Technique, Submitted to Ind. Eng. Chem. Research
  19. R. Idem, P. Tontiwachwuthikul, “Guest Editors’ Introduction” in I&EC Research – Special Issue on “CAPTURE OF CARBON DIOXIDE FROM INDUSTRIAL SOURCES: Technological Developments and Future Opportunities”, in Industrial and Engineering Chemistry Research – an ACS Publication, Vol. 45, No. 8, 200
  20. Henni A., P. Tontiwachwuthikul, A. Chakma, “Solubility Study of Methane and Ethane In Promising Physical Solvents for Natural Gas Sweetening Operations”, J. Chem. Eng. Data., 51(1); 64-67, 2006
  21. “ Photocatalytic Process for CO2 Emission Reduction from Industrial Flue Gas Streams” ( Usubharatana, P.; McMartin, D.; Veawab, A.; Tontiwachwuthikul, P.) in Ind. Eng. Chem. Res.; “special issue on CO2 Capture” Vol. 45, No. 8, 2006, p.2558-2568;
  22. “ Kinetics of the Absorption of CO2 into Mixed Aqueous Loaded Solutions of Monoethanolamine and Methyldiethanolamine” ( Ramachandran, N.; Aboudheir, A.; Idem, R.; Tontiwachwuthikul, P.) in Ind. Eng. Chem. Res.; “special issue on CO2 Capture” Vol. 45, No. 8, 2006, p.2608 -2616;
  23. “ Modelling the Performance of a CO2 Absorber Containing Structured Packing” ( deMontigny, D.; Aboudheir, A.; Tontiwachwuthikul, P.; Chakma, A.) in Ind. Eng. Chem. Res.; “special issue on CO2 Capture” Vol. 45, No. 8, 2006, p.2594-2600;
  24. “ Using A Packed-Column Model to Simulate the Performance of A Membrane Absorber” ( deMontigny, D.; Aboudheir, A.; Tontiwachwuthikul, P.; Chakma, A.) in Ind. Eng. Chem. Res.; “special issue on CO2 Capture” Vol. 45, No. 8, 2006, p.2580-2585;
  25. “Automation Techniques for Optimization of Compressor Scheduling: A Comparison of Mixed Integer Linear Programming and Genetic Algorithms” in progress for publication in the Advances in Engineering Software Journal. (with Chan, C.W., Uraikul, V., Hahn Nguyen);
  26. “ Life-Cycle Analysis of CO2 EOR on EOR and Geological Storage through Economic Optimization and Sensitivity Analysis Using the Weyburn Unit as a Case Study ” (Suebsiri, J.; Wilson, M.; Tontiwachwuthikul, P.) in Ind. Eng. Chem. Res.; “special issue on CO2 Capture” Vol. 45, No. 8, 2006, p.2483-2488;
  27. “ Rigorous Model for Predicting the Behavior of CO2 Absorption into AMP in Packed-Bed Absorption Columns” ( Aboudheir, A.; Tontiwachwuthikul, P.; Idem, R.) in Ind. Eng. Chem. Res.; “special issue on CO2 Capture” Vol. 45, No. 8, 2006, p.2553-2557;
  28. “ Analysis of Monoethanolamine and Its Oxidative Degradation Products during CO2 Absorption from Flue Gases: A Comparative Study of GC-MS, HPLC-RID, and CE-DAD Analytical Techniques and Possible Optimum Combinations”, in Ind. Eng. Chem. Res.; ( with Supap, T.; Idem, R.; Tontiwachwuthikul, P.; Saiwan, C.), “special issue on CO2 Capture” Vol. 45, No. 8, 2006, p.2437-2451 ;
  29. Pilot Plant Studies of the CO2 Capture Performance of Aqueous MEA and Mixed MEA/MDEA Solvents at the University of Regina CO2 Capture Technology Development Plant and the Boundary Dam CO2 Capture Demonstration Plant Idem, R.; Wilson, M.; Tontiwachwuthikul, P.; Chakma, A.; Veawab, A.; Aroonwilas, A.; Gelowitz, D. Ind. Eng. Chem. Res.; “special issue on CO2 Capture” Vol. 45, No. 8, 2006, p.2414-2420;
  30. Interfacial Tensions of the Crude Oil + Reservoir Brine + CO2 Systems at Pressures up to 31 MPa and Temperatures of 27 ° C and 58 ° C (Yang, D.; Tontiwachwuthikul, P.; Gu, Y.) in J. Chem. Eng. Data; 2005 ; 50(4); 1242-1249;
  31. Henni A., P. Tontiwachwuthikul, A. Chakma, “Solubility of CO2 in Fourteen Polar Solvents at Temperatures from 25 °C to 60 °C”, Can. J. Chemical Eng., 83(2), 358-362, 2005.
  32. “Comparing the Absorption Performance of Packed Columns and Membrane Contactors”, accepted to Industrial and Engineering Chemistry Research, 2005, 44 (15) p. 5726-5732. (with D. De Montigny, et al.).
  33. “Ontology construction for developing an expert system for monitoring and control of a natural gas pipeline operations domain”, submitted March 2004 to Knowledge-Based Systems Journal (with C. Chan and V. Uraikul)
  34. “Test Results from CO2 Extraction Pilot Plant at Boundary Dam Coal-fired Power Station”, Industrial ENERGY – An International Journal, (2004), Vol. 29, p. 1259-1267 (with Wilson, M.; et. al.).
  35. “Volumetric Properties and Viscosities for Aqueous N-Methyl-2-pyrrolidone Solutions from 25 °C to 70 °C”, Journal of Chemical and Engineering Data, accepted January 2004 (with A. Henni, J. Hromek, A. Chakma)
  36. “A Novel Design for the Nozzle of the Laminar Jet Absorber” Industrial & Engineering Chemistry Research Journal. (2004) Vol 23, p.2568-2574 (with A. Aboudheir, A. Chakma and R. Idem).
  37. “On the Numerical Modeling of Gas Absorption into Reactive Liquids in a Laminar Jet Absorber”, Canadian Journal of Chemical Engineering, 2003, 81 (3-4), p. 604-612 (with A. Aboudheir, A. Chakma and R. Idem).
  38. A Mixed-Integer Optimization Model for Compressor Selection in Natural Gas Pipeline Network Operations” Journal of Environmental Informatics (2004), Vol 3 p. 33-41. With V. Uraikul, C.W. Chan.
  39. “Volumetric Properties and Viscosities for Aqueous Di-isopropanolamine Solutions from 25 °C to 70 °C”, Journal of Chemical and Engineering Data, 2003, 48, 1062-1067 (with A. Henni, J. Hromek, A. Chakma)
  40. “A Computer-Aided Simulation Model for Natural Gas Pipeline Network System Operations”, Industrial and Engineering Chemistry Research, (2004), Vol 43, p. 990-1002 (with P. Nimmanonda, et al.).
  41. “Kinetics of the Reactive Absorption of Carbon Dioxide in High CO2-loaded, Concentrated Aqueous Monoethanolamine Solutions”, Chemical Engineering Science, (2003), Vol 58, p.5195-5210 (with A. Aboudheir, A. Chakma and R. Idem).
  42. Volumetric Properties and Viscosities for Aqueous AMP Solutions from 25 °C to 70 °C”, Journal of Chemical and Engineering Data, 2003, 48, 551-556. (with A. Henni, J. Hromek, A. Chakma).
  43. “Mathematical Modeling of Mass-Transfer and Hydrodynamics in CO2 Absorbers Packed with Structured Packings” Chemical Engineering Science, 2003 (with Aroonwilas A; Chakma A; Veawab, A.).
  44. “Kinetics of Oxidative Degradation of Aqueous Monoethanolamine”, Industrial and Engineering Chemistry Research, Vol. 40, p.3445-3450 (2001) (with T. Supap, et. al.)
  45. “Investigation of Low-toxic Organic Corrosion Inhibitors for CO2 Separation Process Using Aqueous MEA Solvent”, Industrial and Engineering Chemistry Research, Vol. 40, p.4771-4777 (2001) (with A. Veawab et al.)
  46. “Parametric Studies of Carbon Dioxide Absorption into Highly Concentrated Monoethanolamine Solutions”, Canadian Journal of Chemical Engineering, Vol 79, February 2001, p137-142. (with D. deMontigny and A. Chakma)
  47. “Mechanistic Model for Prediction of Structured Packing Mass Transfer Performance in CO2 Absorption with Chemical Reactions”, Chemical Engineering Science,Vol. 55 (2000) 3651-3663. (with A. Aroonwilas).
  48. “Densities and Viscosities of Binary Mixtures of N-Methyldiethanolamine + Triethylene Glycol Monomethyl Ether from 25 °C – 75 °C and N-Methyldiethanolamine + Ethanol Mixtures at 40 °C”, Journal of Chemical and Engineering Data, 2000, Vol. 45, p. 247-253. (with A. Henni, et. al.).
  49. “Development of an expert system for optimizing natural gas operations”, Expert Systems with Applications, 18 (4), May 2000, p271-282. (with Uraikul, V., C.W. Chan)
  50. “An integrated expert system/operations research approach for automation of natural gas pipeline operations”, Engineering Applications of Artificial Intelligence, Vol. 13 (2000), p.465-475. (with C.K. Sun, V. Uraikul, C.W. Chan)
  51. “Knowledge engineering of a monitoring and control decision support system, Journal of Software Engineering and Knowledge Engineering, 10(3), 2000, p. 301-318. (with Chan, C.W., Kritpiphat W.)
  52. “Behavior of Mass Transfer Coefficient in High Efficiency Structured Packing Columns for CO2 Separation Processes”, Industrial and Engineering Chemistry Research, Vol. 38, p.2044-2050 (1999) (with A. Aroonwilas and A. Veawab).
  53. “Corrosion of Carbon Steel in the CO2 Absorption Process Using Aqueous Amine Solutions”, Industrial and Engineering Chemistry Research, Vol. 38, p.3917-3924 (1999) (with A. Veawab and A. Chakma).
  54. “Influence of Process Parameters on Corrosion Behavior in Sterically-hindered Amine-CO2 System”, Industrial and Engineering Chemistry Research, Vol. 38, No.1 p310-315 (1999). (with Amornvadee Veawab, et. al.)
  55. “Mass Transfer Parameter Estimations Using Optimization Techniques: Case Studies in CO2 Separation Processes”, Canadian Journal of Chemical Engineering, Vol 77, February 1999, p69-73. (with J. Ji, W. Kritpiphat, A. Aboudheir)
  56. “An Intelligent Diagnostic System for Solar Heating Buildings”, Expert Systems with Applications: An International Journal (Pergamon), Vol 16 (1999) p.157-171. (with Leo Sun and C.W. Chan)
  57. “A toolset for construction of hybrid intelligent forecasting systems: application for water pipeline demand prediction”, Artificial Intelligence in Engineering, Vol. 13 p21-42 (1999). (with Lertpalangsunti, N., Chan, C.W., Mason, R.)
  58. “Clean Technology Using Cogeneration for Simultaneous Production of Electricity, Steam and Industrial Gases”, Energy Sources, Vol. 21, No.1 p39-50(1999). (with D. deMontigy et al.)
  59. “Environmental Risk Assessment for Underground Storage Tanks Through an Interval Parameter Fuzzy Relation Analysis”, Energy Sources, in Vol. 21, No.1 p75-96(1999). (with G. Huang, et. al.)
  60. “Pipeline Network Modeling and Simulation for Intelligent Monitoring and Control”, Industrial and Engineering Chemistry Research, Vol. 37, 1998, pp.1033-1044. (with W. Kritpiphat, C.W. Chan)
  61. “Mass Transfer Coefficients and Correlation for CO2 Absorption into 2-Amino-2-Methyl-1-Propanol (AMP) Using Structured Packing”, Industrial and Engineering Chemistry Research, Vol. 37, 1998, pp.569-575. (with A. Aroonwilas)
  62. “Large-scale CO2 Production from Coal-fired Power Stations for Enhanced Oil Recovery: A New Feasibility Study” Journal of Canadian Petroleum Technology, Vol. 37, No.11, p.48-55 (1998). (with C.W. Chan et. al.)
  63. “High Efficiency Structured Packing for CO2 Separation Using 2-Amino-2-Methyl-1-Propanol (AMP) Solutions”, Separation and Purification Technology, Vol.12 (1997), pp.67-79. (with A. Aroonwilas)
  64. “Studies of Corrosion and Corrosion Control in CO2 – 2-Amino-2-Methyl-1-Propanol (AMP) Environment”, Industrial & Engineering Chemistry Research, Vol. 36, 1997, pp.264-269. (with A. Veawab and S.D. Bhole)
  65. “Simultaneous Production of Steam, Carbon Dioxide and Electricity for EOR Applications”, Energy Conversion and Management: An International Journal, Vol. 38, pp. S223-S228 (1997). (with D. deMontigy et al.)
  66. “Mass Transfer Studies of High Performance Structured Packing for CO2 Separation Processes”, Energy Conversion and Management: An International Journal, Vol. 38, pp.S75-S80 (1997). (with A. Aroonwilas)
  67. “R&D on High Efficiency Carbon Dioxide Production for Enhanced Oil Recovery Applications” Journal of Canadian Petroleum Technology, Vol. 36, No. 2, February 1997. (with A. Chakma)
  68. “Supervisory and Decision Support System for Intelligent Monitoring and Control of a Pipeline Network”, AICh.E. Symposium Series 312, Vol 92, 1996 – Intelligent Systems in Process Engineering, edited by G. Stephanopoulos (MIT), J.F. Davis (Ohio State U.) and V. Venkatasubramanian (Purdue U.), American Institute of Chemical Engineers, 1996, pp. 355-360. (with W. Kritpiphat, C.W. Chan, A. An and N. Cercone)
  69. “Production of Carbon Dioxide and Electricity from Coal-fired Power Plants for Enhanced Oil Recovery Applications”, in ENERGY: An International Journal (Pergamon), Vol. 21, No. 10, pp.857-869, 1996. (with C.W. Chan et al.)
  70. “A Decision Support System for Solvent Selection of CO2 Separation Processes”, Energy Conversion and Management: An International Journal (Pergamon), Vol. 37, No. 6-8, pp. 941-946, 1996. (with C. Chan)
  71. “New Modified Kent-Eisenberg Model for Predicting Carbon Dioxide Solubility in Aqueous 2-Amino-2-Methyl-1-Propanol (AMP) Solutions”, Chemical Engineering Communications, Vol. 144, pp. 77-83, 1996. (with W. Kritpiphat)
  72. “New Feasibility Study of Carbon Dioxide Production from Coal-fired Power Plants for Enhanced Oil Recovery: A Canadian Perspective” Energy Conversion and Management, Vol. 37, No. 6-8, pp. 1129-1134, 1996. (with C.W. Chan et al.)
  73. “Corrosivity in 2-Amino-2-Methyl-1-Propanol (AMP) – CO2 System”, Chemical Engineering Communications, Vol. 144, pp. 65-71, 1996. (with A. Veawab and S.D. Bhole)
  74. “Research and Development Activities on High Efficiency Separation Process Technologies for Carbon Dioxide Removal from Industrial Sources at University of Regina, Canada”, Energy Conversion and Management: An International Journal (Pergamon), Vol. 37, No. 6-8, pp. 935-940, 1996.
  75. “Carbon Dioxide Production from Co-generation for Enhanced Oil Recovery: An Economic Evaluation” Journal of Canadian Petroleum Technology, Vol. 35, No. 6, June 1996, pp. 27-33. (with D. Gelowitz and W. Kritpiphat)
  76. “Knowledge Engineering for a Process Design Domain”, International Journal of Expert Systems: Research and Applications, 8(1), p. 47-76, 1995. (with C.W. Chan and N. Cercone)
  77. “Cogeneration Concepts for CO2Separation from Power Plants for Enhanced Oil Recovery”, in Energy Conversion and Management (Pergamon): An International Journal – Special Issue on Carbon Dioxide Removal, 36 (6-9), p.563-566, 1995. (with D. Gelowitz and W. Kritpiphat)
  78. “Expert System for Solvent Selection of CO2 Separation Processes”, Expert Systems with Applications: An International Journal (Pergamon), 8 (1), p. 33-46, 1995. (with C.W. Chan)
  79. “Simulation of Pilot Plant and Industrial CO2 – MEA Absorbers”, Gas Separation & Purification, 7(1), p.47-52, 1993. (with T. Pintola and A. Meisen)
  80. “CO2 Absorption by NaOH, MEA and AMP Solutions in a Packed Column”, Chemical Engineering Science, 47(2), p.381-390, 1992. (with A. Meisen and C.J. Lim)
  81. “Solubility of CO2 in 2-Amino-2-Methyl-1-Propanol Solutions”, Journal of Chemical and Engineering Data, 36(1), p.130-133, 1991. (with A. Meisen and C.J. Lim)
  82. “Novel Pilot Plant Technique for Sizing Gas Absorbers with Chemical Reactions”, Canadian Journal of Chemical Engineering, 67(4), p.602-607, 1989. (with A. Meisen and C.J. Lim)
  83. Pouryousefi, F. and Idem, R. O. (2007), A New Analytical Technique for Carbon Dioxide Absorption Solvents, Ind. Eng. Chem. Res., Accepted, November 2007.
  84. Uyanga, I. J. and Idem, R. O. (2007), Studies of SO2 and O2 Induced Degradation of Aqueous MEA during CO2 Capture from Power Plant Flue Gas Streams, Ind. Eng. Chem. Res. 46, 2558-2566.
  85. Idem, R., Wilson, M., Tontiwachwuthikul, P., Veawab, A., Aroonwilas, A. and Gelowitz, D. (2006), Capturing Carbon in Canada, Modern Power Systems, April 2006, pp 28-29.
  86. Lawal, A. O. and Idem, R. O. (2006), Kinetics of the Oxidative Degradation of CO2 Loaded and Concentrated Aqueous MEA-MDEA Blends During CO2 Absorption from Flue Gas Streams, Ind. Eng. Chem. Res. 45(8), 2601-2607.
  87. Bello, A. and Idem, R. O., (2006), A Comprehensive Study of the Kinetics of the Oxidative Degradation of CO2-loaded and Concentrated Aqueous Monoethanolamine (MEA) with and without Sodium Metavanadate During CO2 Absorption from Flue Gases, Ind. Eng. Chem. Res., 45(8), 2569-2579.
  88. Lawal, A. O., Bello, A. and Idem, R. O. (2005), The Role of Methyl Diethanol Amine (MDEA) in Preventing the Oxidative Degradation of CO2 Loaded and Concentrated Aqueous MEA-MDEA Blends During CO2 Absorption from Flue Gases Ind. Eng. Chem. Res. 44, 1874-1896.
  89. Lawal, A. O. and Idem, R. O., (2005), Effects of Operating Variables on the Product Distribution and Reaction Pathways in the Oxidative Degradation of CO2 Loaded Aqueous MEA-MDEA Blends During CO2 Absorption from Flue Gas Streams, Ind. Eng. Chem. Res., 44, 986-1003.
  90. Bello, A. and Idem, R. O., (2005), Pathways for the formation of Products of the Oxidative Degradation of CO2 Loaded Concentrated Aqueous MEA Solutions during CO2 Absorption from Flue Gases, Ind. Eng. Chem. Res., 44, 945-969.
  91. Aboudheir, A., Tontiwachwuthikul, P. Chakma, A. and Idem, R. (2004), A Novel Design for the Nozzle of the Laminar Jet Absorber, Ind. Eng. Chem. Res. 43, 2568-2574.